Yang Yan, Tan Fang, Xie Xiaoxue, Yang Xiumei, Zhou Zaichun, Deng Keqin, Huang Haowen
Key Laboratory of Theoretical Organic Chemistry and Functional Molecule, Ministry of Education, Hunan Provincial Key Laboratory of Controllable Preparation and Functional Application of Fine Polymers, School of Chemistry and Chemical Engineering, Hunan University of Science and Technology.
Anal Sci. 2019 Jun 10;35(6):691-699. doi: 10.2116/analsci.19P004. Epub 2019 Mar 8.
Plasmon-enhanced light harvesting has been of great interest to enhance the catalytic efficiency of some composites or hybrids. The enhanced peroxidase-like activity of phosphorylated iron(III) porphyrin (TPPFe(III))-based nanocomposite, induced by localized surface plasmon resonance for a colorimetric assay, was developed in this study. Firstly, a phosphate group modification strategy was adopted to synthesize water-soluble iron(III) porphyrin materials. Then, the as-synthesized TPPFe(III) was covalently attached to core-shell gold nanorods (GNRs), GNR@AuS/AuAgS, to form TPPFe(III)-GNR@AuS/AuAgS nanocomposite, which shows greatly enhanced peroxidase-like activity compared to TPPFe(III). A mechanism for the enhanced peroxidase-like activity of TPPFe(III)-GNR@AuS/AuAgS was proposed, which results from a synergic effect of hot electrons excited by localized surface plasmon resonance and photogenerated electrons of the TPPFe(III), verified by experiments. Furthermore, a fast colorimetric assay for the detection of HO and glucose was established based on the unique property of TPPFe(III)-GNR@AuS/AuAgS. This colorimetric assay was applied to determine practical human serum samples; satisfactory results demonstrate this method has high accuracy. The present study would not only provide some insights into the mechanism of plasmon-activated enzyme-like reactions, but also offer new strategies for improving the catalytic activity of a mimetic enzyme.
等离子体增强光捕获对于提高某些复合材料或杂化物的催化效率具有重大意义。本研究开发了一种基于磷酸化铁(III)卟啉(TPPFe(III))的纳米复合材料,通过局域表面等离子体共振诱导其增强的类过氧化物酶活性,用于比色测定。首先,采用磷酸基团修饰策略合成水溶性铁(III)卟啉材料。然后,将合成的TPPFe(III)共价连接到核壳金纳米棒(GNRs),即GNR@AuS/AuAgS上,形成TPPFe(III)-GNR@AuS/AuAgS纳米复合材料,与TPPFe(III)相比,其显示出大大增强的类过氧化物酶活性。提出了TPPFe(III)-GNR@AuS/AuAgS类过氧化物酶活性增强的机制,该机制源于局域表面等离子体共振激发的热电子与TPPFe(III)的光生电子的协同效应,并通过实验得到验证。此外,基于TPPFe(III)-GNR@AuS/AuAgS的独特性质,建立了一种用于检测HO和葡萄糖的快速比色测定法。该比色测定法应用于实际人体血清样本的测定;令人满意的结果表明该方法具有很高的准确性。本研究不仅将为等离子体激活类酶反应的机制提供一些见解,还将为提高模拟酶的催化活性提供新的策略。